Atomistic insight on structure and dynamics of spinach acyl carrier protein with substrate length.

Biophys J

Pacific Northwest National Laboratory, Physical and Computational Sciences Directorate, Richland, Washington.

Published: September 2021

AI Article Synopsis

  • The plant acyl-acyl carrier protein (ACP) desaturases are essential enzymes that convert saturated fatty acids into monounsaturated ones, influencing fatty acid biosynthesis in plants.
  • Researchers studied the dynamics and structure of spinach ACP with various acyl chains, finding that different fatty acids can form two distinct binding structures that affect ACP's activity.
  • Molecular simulations indicate that the interactions between ACP and different desaturases could affect which binding motif is preferred, potentially altering enzymatic efficiency.

Article Abstract

The plant acyl-acyl carrier protein (ACP) desaturases are a family of soluble enzymes that convert saturated fatty acyl-ACPs into their cis-monounsaturated equivalents in an oxygen-dependent reaction. These enzymes play a key role in biosynthesis of monounsaturated fatty acids in plants. ACPs are central proteins in fatty acid biosynthesis that deliver acyl chains to desaturases. They have been reported to show a varying degree of local dynamics and structural variability depending on the acyl chain size. It has been suggested that substrate-specific changes in ACP structure and dynamics have a crucial impact on the desaturase enzymatic activity. Using molecular dynamics simulations, we investigated the intrinsic solution structure and dynamics of ACP from spinach with four different acyl chains: capric (C), myristic (C), palmitic (C), and stearic (C) acids. We found that the fatty acids can adopt two distinct structural binding motifs, which feature different binding free energies and influence the ACP dynamics in a different manner. Docking simulations of ACP to castor Δ-desaturase and ivy Δ-desaturase suggest that ACP desaturase interactions could lead to a preferential selection between the motifs.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8456182PMC
http://dx.doi.org/10.1016/j.bpj.2020.12.036DOI Listing

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